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The solid-liquid interfacial reaction and measurement method for micro-reactor reaction solid-liquid interface

机译:固液界面反应及微反应器固液界面的测量方法

摘要

And a flow path 12 of the thin layer which is partially in cross section, formed by the solid sample 10 to be measured causing the interfacial reaction to be measured by contact with a liquid phase, the circulating liquid phase in the flow channel 12 by, and to simulate the environment of the actual and the liquid phase of the thin layer and the solid sample 10 to be measured is in contact, to cause the interfacial reaction of the liquid phase and solid sample 10. Thus, by measuring the reaction solid-liquid interface that caused by reproducing the actual environment, it is possible to accurately measure the various reaction solid-liquid interface caused by environment. In addition, by forming the thin layer flow path 12, it is possible ratio of the area of ​​the solid-liquid interface to the volume of the liquid phase of the channel 12 increases, manifesting a high speed interface reaction, the measurement time I can be greatly shortened. Further, since the internal volume of the flow path 12 is very small, it is possible to greatly reduce the amount of liquid phase used in the measurement.
机译:并且,由待测固体样品10形成的,局部截面的薄层的流路12通过与液相,流路12内的循环液相的接触来进行界面反应的测定,并模拟薄层与被测固体样品10的实际和液相的环境接触,从而引起液相和固体样品10的界面反应。因此,通过测量固相反应通过再现实际环境而产生的液体界面,可以准确地测量环境所引起的各种反应固液界面。另外,通过形成薄层流路12,可以使固液界面的面积与流路12的液相的体积之比变大,表现出高速的界面反应,测定时间我可以大大缩短。此外,由于流路12的内部容积非常小,因此可以大大减少在测量中使用的液相量。

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